forked from OSchip/llvm-project
155 lines
4.4 KiB
LLVM
155 lines
4.4 KiB
LLVM
; RUN: opt -S -instcombine < %s | FileCheck %s
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; (-0.0 - X) * C => X * -C
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define float @test1(float %x) {
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%sub = fsub float -0.000000e+00, %x
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%mul = fmul float %sub, 2.0e+1
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ret float %mul
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; CHECK-LABEL: @test1(
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; CHECK: fmul float %x, -2.000000e+01
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}
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; (0.0 - X) * C => X * -C
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define float @test2(float %x) {
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%sub = fsub nsz float 0.000000e+00, %x
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%mul = fmul float %sub, 2.0e+1
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ret float %mul
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; CHECK-LABEL: @test2(
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; CHECK: fmul float %x, -2.000000e+01
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}
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; (-0.0 - X) * (-0.0 - Y) => X * Y
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define float @test3(float %x, float %y) {
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%sub1 = fsub float -0.000000e+00, %x
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%sub2 = fsub float -0.000000e+00, %y
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%mul = fmul fast float %sub1, %sub2
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ret float %mul
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; CHECK-LABEL: @test3(
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; CHECK: fmul fast float %x, %y
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}
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; (0.0 - X) * (0.0 - Y) => X * Y
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define float @test4(float %x, float %y) {
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%sub1 = fsub nsz float 0.000000e+00, %x
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%sub2 = fsub nsz float 0.000000e+00, %y
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%mul = fmul float %sub1, %sub2
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ret float %mul
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; CHECK-LABEL: @test4(
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; CHECK: fmul float %x, %y
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}
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; (-0.0 - X) * Y => -0.0 - (X * Y)
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define float @test5(float %x, float %y) {
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%sub1 = fsub float -0.000000e+00, %x
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%mul = fmul float %sub1, %y
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ret float %mul
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; CHECK-LABEL: @test5(
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; CHECK: %1 = fmul float %x, %y
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; CHECK: %mul = fsub float -0.000000e+00, %1
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}
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; (0.0 - X) * Y => 0.0 - (X * Y)
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define float @test6(float %x, float %y) {
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%sub1 = fsub nsz float 0.000000e+00, %x
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%mul = fmul float %sub1, %y
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ret float %mul
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; CHECK-LABEL: @test6(
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; CHECK: %1 = fmul float %x, %y
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; CHECK: %mul = fsub float -0.000000e+00, %1
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}
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; "(-0.0 - X) * Y => -0.0 - (X * Y)" is disabled if expression "-0.0 - X"
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; has multiple uses.
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define float @test7(float %x, float %y) {
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%sub1 = fsub float -0.000000e+00, %x
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%mul = fmul float %sub1, %y
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%mul2 = fmul float %mul, %sub1
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ret float %mul2
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; CHECK-LABEL: @test7(
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; CHECK: fsub float -0.000000e+00, %x
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}
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; Don't crash when attempting to cast a constant FMul to an instruction.
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define void @test8(i32* %inout) {
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entry:
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%0 = load i32* %inout, align 4
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%conv = uitofp i32 %0 to float
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%vecinit = insertelement <4 x float> <float 0.000000e+00, float 0.000000e+00, float 0.000000e+00, float undef>, float %conv, i32 3
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%sub = fsub <4 x float> <float -0.000000e+00, float -0.000000e+00, float -0.000000e+00, float -0.000000e+00>, %vecinit
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%1 = shufflevector <4 x float> %sub, <4 x float> undef, <4 x i32> <i32 1, i32 1, i32 1, i32 1>
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%mul = fmul <4 x float> zeroinitializer, %1
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br label %for.cond
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for.cond: ; preds = %for.body, %entry
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%local_var_7.0 = phi <4 x float> [ %mul, %entry ], [ %2, %for.body ]
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br i1 undef, label %for.body, label %for.end
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for.body: ; preds = %for.cond
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%2 = insertelement <4 x float> %local_var_7.0, float 0.000000e+00, i32 2
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br label %for.cond
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for.end: ; preds = %for.cond
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ret void
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}
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; X * -1.0 => -0.0 - X
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define float @test9(float %x) {
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%mul = fmul float %x, -1.0
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ret float %mul
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; CHECK-LABEL: @test9(
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; CHECK-NOT: fmul
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; CHECK: fsub
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}
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; PR18532
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define <4 x float> @test10(<4 x float> %x) {
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%mul = fmul <4 x float> %x, <float -1.0, float -1.0, float -1.0, float -1.0>
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ret <4 x float> %mul
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; CHECK-LABEL: @test10(
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; CHECK-NOT: fmul
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; CHECK: fsub
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}
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define float @test11(float %x, float %y) {
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%a = fadd fast float %x, 1.0
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%b = fadd fast float %y, 2.0
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%c = fadd fast float %a, %b
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ret float %c
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; CHECK-LABEL: @test11(
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; CHECK-NOT: fadd float
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; CHECK: fadd fast float
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}
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; PR21126: http://llvm.org/bugs/show_bug.cgi?id=21126
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; With unsafe/fast math, sqrt(X) * sqrt(X) is just X.
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declare double @llvm.sqrt.f64(double)
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define double @sqrt_squared1(double %f) {
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%sqrt = call double @llvm.sqrt.f64(double %f)
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%mul = fmul fast double %sqrt, %sqrt
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ret double %mul
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; CHECK-LABEL: @sqrt_squared1(
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; CHECK-NEXT: ret double %f
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}
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; With unsafe/fast math, sqrt(X) * sqrt(X) is just X,
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; but make sure another use of the sqrt is intact.
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; Note that the remaining fmul is altered but is not 'fast'
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; itself because it was not marked 'fast' originally.
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; Thus, we have an overall fast result, but no more indication of
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; 'fast'ness in the code.
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define double @sqrt_squared2(double %f) {
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%sqrt = call double @llvm.sqrt.f64(double %f)
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%mul1 = fmul fast double %sqrt, %sqrt
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%mul2 = fmul double %mul1, %sqrt
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ret double %mul2
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; CHECK-LABEL: @sqrt_squared2(
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; CHECK-NEXT: %sqrt = call double @llvm.sqrt.f64(double %f)
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; CHECK-NEXT: %mul2 = fmul double %sqrt, %f
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; CHECK-NEXT: ret double %mul2
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}
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